• 제목/요약/키워드: PVC membrane electrode

검색결과 94건 처리시간 0.023초

PVC 를 섞은 요오드화은 막전극에 관한 연구 (Study on PVC Mixed Silver Iodide Membrane Electrode)

  • 권영순;김정희;박기채
    • 대한화학회지
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    • 제20권6호
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    • pp.486-493
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    • 1976
  • AgI 가루에 PVC를 섞어 Infrared Pellet Presser로 눌러 만든 Pellet을 이용하여 막전극을 만들고 이것을 지시전극으로 사용하여 $Ag^+$의 활동도에 대한 전위를 측정하였다. 이 막전극의 특성을 순수한 AgI pellet와 PVC로 표면을 입힌 AgI pellet을 이용한 두 막전극의 특성과 비교하였다. 이들 막전극의 은이온 활동도에 대한 감응은 은이온의 농도가 $10^{-1}$M에서 $10^{-6}$M 까지의 범위에서 좋은 직선을 보여준다. 그러나 그 중에서도 AgI가루에 PVC를 섞어서 만든 막전극이 Nernstian 기울기에 가장 잘 맞고 견고하고 장시간 사용할 수 있어 가장 우수함을 알 수 있었다. 이 전극은 은이온 이와의 다른 양이온에 대하여는 거의 감응하지 않고 할로겐화이온, 즉$I^-,CI^-,Br^-,CN^-$에 대한 감응도는 $10^{-1}$M에서 $10^{-6}$M까지 직선관계를 유지하였다. 이 전극은 단일 할로겐화이온 뿐 아니라 할로겐화이온의 혼합시료 용액의 전위차 은법적정에 지시전극으로 이용될 수 있음을 알았다.

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${\beta}-Ag_3SI$ 단결정막 전극에 관한 연구 (${\beta}-Ag_3SI$ Single Crystal Membrane Electrode)

  • 신두순;이선천
    • 대한화학회지
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    • 제28권2호
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    • pp.86-94
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    • 1984
  • ${\beta}-Ag_3SI$의 단결정을 만들어 막전극으로의 응용을 살펴보았다. 그 결과 할로겐 이온들에 대해 감응함을 알았고, 분리용액법과 혼합용액법으로 할로겐 이온들에 대한 선택계수를 얻어 이론값과 비교검토 하였으며, 전위시간 곡선으로 부터 이 전극이 유리 전극기구에 의해 전도함을 알았고, 넓은 pH 범위에서 전위가 일정한 값을 가짐을 알았다. 한편 분석화학에의 응용을 살펴 본 결과 할로겐이온의 혼합용액에서 좋은 지시전극으로 사용할 수 있음을 알았다

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A New PVC-Membrane Electrode Based on a Thia-Substituted Macrocyclic Diamide for Selective Potentiometric Determination of Silver Ion

  • Shamsipur, Mojtaba;Kazemi, Sayed Yahya;Niknam, Khodabaksh;Sharghi, Hashem
    • Bulletin of the Korean Chemical Society
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    • 제23권1호
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    • pp.53-58
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    • 2002
  • A new PVC-membrane electrode for $Ag^+$ ion based on a thia-substituted macrocyclic diamide has been prepared. The electrode exhibited a Nernstian response for $Ag^+$ over a wide concentration range $(1.7{\times}10^{-6}-1.0{\times}10^{-1}M)$. It has a response time <15 s and can be used for at least 3 months without divergence. The proposed membrane sensor revealed good selectivities for $Ag^+$ over a variety of metal ions and can be used in a pH range 3.0-7.5. It has been used successfully for direct determination of $Ag^+$ in different real samples and, as an indicator electrode, in the titration of silver ion.

과염소산 이온선택성 PVC막전극 제작 (Fabrication of Perchlorate Ion Selective PVC Membrane Electrode)

  • 우인성;안형환;강안수
    • 한국전기전자재료학회논문지
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    • 제11권4호
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    • pp.298-305
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    • 1998
  • The PVC membrane electrode for measuring perchlorate ion was developed by incorporating various quaternary ammonium sallts. The effect of chemical structure, the content of active material, the kind of plasticizers, and the membrane thickness on the electrode characteristic such as the linear response range and Nernstian slope of the electrode were studied. It was obtained that the effect of the chemical structure of an active material on the electrode characteristics was improved with increasing the alkyl chain length of the quarternary ammonium salts in the ascending order of Aliquat 336P, TOAP, TDAP, and TDDAP. The optimum membrane composition was 9.09wt% of TDDAP, 30.3wt% of PVC, and 60.6wt% of plasticizer(DBP). And the optimum membrane thickness was 0.45mm at this composition. Under the above condition, the linear response range was $10^{-1}~1.2\times10^{-6}$M, and the detection limit was $5.1\times10^{-7}$M with the Nernstian slope of 57mV/decade of activity of perchlorate ion. The electrode potential was stable within the pH range from 4 to 11. The selectivity coefficient was as shown below: $SCN^->I^-NO_3^->Br^->ClO_3^->F^->Cl^->SO_4^{2-}$

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Lead-selective PVC Membrane Electordes Based on Bis(Crown ether)s

  • 오금철;강은철;정규성;팽기정
    • Bulletin of the Korean Chemical Society
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    • 제20권5호
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    • pp.556-558
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    • 1999
  • Lead-selective PVC membrane electrodes based on newly synthesized bis(crown ether)s containing 18-crown-6 moiety was prepared using standard PVC membrane composition. In order to monitor lead in environmental samples by lead sensor, especially good selectivity over alkali and alkaline earth metals has to be obtained. Thus, responses of the PVC membrane prepared with new bis(crown ether)s and Fluka ionophore V (crown ether) base to various cations include lead, alkali and alkaline earth metal ions were investigated for their use as a lead sensor. The polymeric liquid membrane based on trans-1 8-crown-6 ether exhibits the best overall potentiometric performances as a lead-selective electrode in terms of a wide linear dynamic range (between 10-6 and 10-2 M, Pb2+), excellent detection limit (less than 10-6 M) and good durability within limited error. The preferences of lead over other cations, such as Ag+, Hg2+, Na+, Ca2+ and even K+ in the aforementioned electrode are much better than the Fluka ionophore V system.

폐수처리 공정중 유해음이온을 측정하기 위한 PVC 막 전극 (The PVC Membrane Electrode for Measuring Hazardous Anion in Waste Water Process)

  • 우인성;안형환
    • 한국안전학회지
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    • 제10권4호
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    • pp.47-59
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    • 1995
  • The perchlorate, thiocyanate, and nitrate ion-selective PVC membrance electrode for measuring hazardous anion in waste water were developed by incorporating the quaternary ammonium salts as active material. Ion-selective characteristics in waste water were studied by the useful pH range, the selective coefficients to various interfering anions, and the stability of electrode potential. DBP was best as a plasticizer. The effect of the membrane thickness on the electrode characteristics was improved with decreasing the membrane thickness, but below the optimum membrane thickness the electrode exhibited an inverse trend. The electrode potential of perchlorate, thiocyanate, and nitrate electrode with TDDA, as active material, was stable within the pH range 4-11, 3-12, and 4-10 repectively. And the long-term potential stability of these electrodes were 3.0, 3.5, and 3.5 months respectively. The order of the selectivity coefficients was as shown below ; $ClO_4{^-}$ > $SCN^-$ > $I^-$ > $NO_3{^-}$ > $Br^-$ > $CN^-$ > $F^-$ > $Cl^-$ > $Ac^-$ > $H_2PO_4{^-}$, $SO_4{^-}$.

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대기중 질산화물의 이온 선택성 전극에 의한 처리 (Treatment of Nitrogen Oxides in Ambient Air using a Ion-Selective Electrode)

  • 안형환;우인성;강안수;이영순;김윤선
    • 한국안전학회지
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    • 제5권2호
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    • pp.40-49
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    • 1990
  • For the determination of polluant NOx in ambient air, nitrate ion-selective electrode(ISE) was made. To comparison of NOx in each method, the nitrate-ISE, NEBA, Orion electrode were used to determinee NOx in ambient air. In this work, the concentration of NOx in ambient air was average 0.06ppm. The results were good agreement with those obtained by each method within a relative error of 3%, Absorbing efficiency of nitrogen oxides in ambient air was good for Alkali solution. The determination of nitrogen oxides in ambient air using the Aliquat 336N-PVC membrane electrode was one of the useful method. The best characteristics of the Aliquat 336N-PVC me,mbrane electrode were obtained with the ion-exchanger concentration level of 6.5-9.1 percent by weight. The optimal membrane composition, was 9.09wt.% of ion-exchanger, 30.95wt.% of PVC, 60.6wt.% of plasticizer (DBP), and 0.5mm of thickness. Under the above condition, the electrode approached the Nernstian slope most closely, and the linear response ranges produced the best results.

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A New Fe (III)-Selective Membrane Electrode Based on Fe (II) Phthalocyanine

  • Ozer, Tugba;Isildak, Ibrahim
    • Journal of Electrochemical Science and Technology
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    • 제10권3호
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    • pp.321-328
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    • 2019
  • A new miniaturized all solid-state contact Fe (III)-selective PVC membrane electrode based on Fe (II) phthalocyanine as a neutral carrier was described. The effects of the membrane composition and foreign ions on the electrode performance was investigated. The best performance was obtained with a membrane containing 32% poly (vinyl chloride), 64% dioctylsebacate, 3% Fe (II) phthalocyanine, and 1% potassium tetrakis (p-chlorophenyl) borate. The electrode showed near Nernstian response of $26.04{\pm}0.95mV/decade$ over the wide linear concentration range $1.0{\times}10^{-6}$ to $1.0{\times}10^{-1}M$, and a very low limit of detection $1.8{\pm}0.5{\times}10^{-7}M$. The potentiometric response of the developed electrode was independent at pH 3.5-5.7. The lifetime of the electrode was approximately 3 months and the response time was very short (< 7 s). It exhibited excellent selectivity towards Fe (III) over various cations. The miniaturized all solid-state contact Fe (III)-selective membrane electrode was successfully applied as an indicator electrode for the potentiometric titration of $1.0{\times}10^{-3}M$ Fe (III) ions with a $1.0{\times}10^{-2}M$ EDTA and the direct determination of Fe (III) ions in real water samples.

중성운반체를 이용한 K+ 이온선택성 PVC막 전극 (K+ Ion-Selective PVC Membrane Electrodes with Neutral Carriers)

  • 김용렬;조경섭;강안수
    • 공업화학
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    • 제9권5호
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    • pp.734-741
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    • 1998
  • 본 연구에서는 전극전위 분석법을 사용하여 중성운반체로 dibenzo-18-crown-6(D18Cr6)와 valinomycin(Val)을 이용하여 $K^+$ 이온선택성 PVC막 전극의 막과 용액계면에서의 전극특성을 검토하였다. PVC막에서 감응물질(운반체)에 기본전해질의 혼입 (doping)여부, 감응물질의 종류와 함량, 가소제, 막두께 및 이온의 활동도변화에 따른 전극의 기울기, 선형응답범위 한계측정농도 및 방해이온에 따른 선택계수 등 전극특성을 검토하였다. 중성운반체로 D18Cr6, Val을 $K^+$ 이온으로 착체형성하여 사용하였고, 가소제로 dibutylphthalate(DBP), dioctyl sebacate(DOS) 및 dibutyl sebacate(DBS)를, 혼입제인 기본전해질로 potassium tetraphenylborate (KTPB) 및 용매로 THF를 지지체로 PVC를 이용하여 막을 제조하였다. 운반체의 최적 함량은 D18Cr6와 Val의 경우 3.23 wt %이었고, 가소제는 DBP가 가장 적절한 가소제이었다. 막두께에 대한 영향은 최적 막두께 이상에서는 막두께가 얇아질수록 전극특성이 좋아졌으나, 막두께가 이 이하로 얇아지면 운반체의 용출, 막의 강도 등이 작용하여 전극특성이 나빠짐을 알 수 있었다. D18Cr6의 경우 $K^+$ 이온에 대한 혼합용액법에 의한 선택계수 서열은 다음과 같았다: $NH_4{^+}>Ca^{2+}>Mg^{2+}>Na^+$.

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제4급 암모늄염을 이용한 과염소산 이온선택성 PVC막 전극 (Perchlorate Ion-Selective PVC Membrane Electrode Based on the Quaternary Ammonium Salts)

  • 안형환;김용렬;강현춘;이한섭;이병철;강안수
    • 멤브레인
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    • 제3권3호
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    • pp.126-135
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    • 1993
  • 감응물질로 제4급 암모늄염을 사용하여 PVC를 지지체로 과염소산이온의 농도 $10^{-6}M$까지 측정가능한 이온 선택성 전극을 제작하였다. 감응물질의 화학적 구조와 함량, 가소제의 종류 및 막 두께에 따른 선형응답 범위와 Nernst의 기울기 등 전극특성을 검토하여, 최적 막조건을 구한 다음 측정가능 pH범위와 여러 방해이온에 대한 선택계수를 비교 검토하였다. 과염소산 이온선택성 전극에서 감응물질의 화학적 구조 즉, 알킬기의 탄소고리수가 증가할수록 선형응답 범위 등 전극 특성은 Aliquat 336P, TOAP, TDAP 및 TDDAP의 순서로 좋아졌다. 가소제는 DBP가 가장 좋았고, 감응물질의 양은 최적 함량 이상에서 적을수록 좋았다. 최적 막 조성은 TDDAP 9.09, PVC 30.3 및 DBP 60.61wt%이었고, 막두께 0.45mm이었다. 이 조건에서 선형응답 범위 $10^{-1}~1.2 {\times} 10^{-6}M$, 검출한계 $5.1{\times}10^{-7}M$ 및 Nernst기울기 $57mV/pClO_4$이었다. 막전위는 pH 4~11 범위에서 pH의 영향을 받지 않았으며, 선택계수 서열은 다음과 같았다. $SCN^->I^->NO_3^->Br^->ClO_3^->F^->Cl^->SO_4^{2-}$

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